Location History:
- Jiangsu, CN (2017 - 2022)
- Nanjing, CN (2022)
Company Filing History:
Years Active: 2017-2022
Title: Qixue Zhang: Innovator in Transformer Technology
Introduction
Qixue Zhang is a prominent inventor based in Jiangsu, China. He has made significant contributions to the field of electrical engineering, particularly in transformer technology. With a total of 5 patents to his name, Zhang's work focuses on enhancing the reliability and efficiency of power systems.
Latest Patents
One of Zhang's latest patents is titled "Method for detecting open phase of startup/standby transformer based on optical CT." This invention addresses the challenge of detecting open phase faults in startup/standby transformers, which are often in a no-load condition. By utilizing optical CT technology, the method allows for the detection of three-phase current and provides an alarm signal to operators, thereby improving the operational reliability of power plants.
Another notable patent is the "Method and device for quickly eliminating ferromagnetic resonance of voltage transformer." This invention outlines a process for sampling three-phase voltage and open-delta voltage to eliminate ferromagnetic resonance effectively. The method enhances the success probability of resonance elimination, ensuring better performance of voltage transformers.
Career Highlights
Qixue Zhang has worked with reputable companies such as Nr Electric Co., Ltd and Nr Engineering Co., Ltd. His experience in these organizations has contributed to his expertise in transformer technology and electrical engineering.
Collaborations
Zhang has collaborated with notable professionals in his field, including Guang Wang and Jun Chen. These collaborations have further enriched his work and innovations in transformer technology.
Conclusion
Qixue Zhang is a distinguished inventor whose contributions to transformer technology have significantly impacted the electrical engineering field. His innovative patents demonstrate his commitment to enhancing the reliability and efficiency of power systems.